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The WiFi/WLAN IP Core designed for FPGA and DSP systems provides a robust solution for wireless LAN implementation according to IEEE 802.11 standards. Built to operate effectively across different hardware platforms, this IP core combines both PHY and MAC layer functionalities, ensuring compliance with various WLAN protocols. The physical layer utilizes technologies like OFDM for high data rate transmission, and the MAC layer supports operations over multiple processor brands including ARM and Motorola. Suitable for different DSP and FPGA architectures, the core is adaptable, allowing seamless hardware integration with minimal effort. This flexibility ensures that the design can accommodate both current and future WLAN technological advancements, making it a cost-effective choice for developers focused on creating cutting-edge wireless solutions.
The MIMO Wireless Communication module integrates advanced MIMO techniques to significantly enhance data throughput and link range without the need for extra bandwidth or power. It utilizes multiple antennas at transmitter and receiver ends to improve spectral efficiency and link reliability through spatial multiplexing. Tailored for compliance with standards like IEEE 802.11n and 3GPP LTE, the module offers a profound boost in performance for next-generation cellular networks. MIMOWAVES succeeds in balancing complexity and efficiency by combining MIMO with OFDM, effectively mitigating multi-path channel issues. Their implementation supports a 2x2 channel model, permitting dual stream transmission and reception, which is paramount in achieving high-speed, high-quality wireless communication.
MIMOWAVES offers Security Cores tailored for FPGA and DSP devices, focused on providing robust cryptographic solutions essential for protecting digital communications. These cores are highly optimized for performance and resource efficiency, offering a balance between security and operational speed. They are particularly suitable for applications that demand high levels of data integrity and confidentiality such as wireless communication systems and embedded security modules. The flexibility of these cores allows them to be implemented across diverse hardware platforms, supporting various encryption and decryption standards to address evolving security threats. They are engineered to integrate seamlessly into existing systems, minimizing implementation time while enhancing overall security posture.
The Mobile WiMAX IP Core is architected to support IEEE 802.16e standards, providing a high-speed broadband wireless communication framework. Targeting platforms like FPGA, this core offers a scalable and efficient data transmission solution through Orthogonal Frequency Division Multiplexing (OFDM). It complies with the WirelessMAN-OFDMA PHY Layer and is notably adaptable for various bandwidth requirements, ranging from 3.5 MHz to 20 MHz. This core enables efficient time and frequency synchronization, enhancing reliability in challenging multipath environments. MIMOWAVES focuses on maximizing performance with support for various FFT sizes and adaptive modulation schemes such as BPSK, QPSK, 16-QAM, and 64-QAM, ensuring robust and dynamic operations across a spectrum of wireless communication scenarios.
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